e Exercices Constant kle Consuder the curent below, powered by Sunusoidal alternating Voltage of amplitude and variable pulsection. We gote denute: a R = 10 k√, L21 H + G=25n F 1 C R R C 100 a. Express the transfer function H(jw) = 3 of this Curcunt and Calculate the of e maximum gaun Cmax (un decibels) thu's assembly and the phase shift & between 3 and e. 6. Determine the cutoff pulses of this curcuit at -3dB. Deduce the frequency filter. bandwidth of this C. Determine the gain in G (decubel) and the phase shift & for w00 and wx. Hence plot the gain diagram 4CX) on logarithmic scale. Hoα) d. Place (Put) the transfer functionation the form. H(jw) = ய 1+ Wa At ju² ) (1 + j ( ) (1 + ju2) d احد We will calculate the coefficients Wo, WI, Wa and we will Veroff that Wo = W₁. W₂ 2 Conclusions ??
e Exercices Constant kle Consuder the curent below, powered by Sunusoidal alternating Voltage of amplitude and variable pulsection. We gote denute: a R = 10 k√, L21 H + G=25n F 1 C R R C 100 a. Express the transfer function H(jw) = 3 of this Curcunt and Calculate the of e maximum gaun Cmax (un decibels) thu's assembly and the phase shift & between 3 and e. 6. Determine the cutoff pulses of this curcuit at -3dB. Deduce the frequency filter. bandwidth of this C. Determine the gain in G (decubel) and the phase shift & for w00 and wx. Hence plot the gain diagram 4CX) on logarithmic scale. Hoα) d. Place (Put) the transfer functionation the form. H(jw) = ய 1+ Wa At ju² ) (1 + j ( ) (1 + ju2) d احد We will calculate the coefficients Wo, WI, Wa and we will Veroff that Wo = W₁. W₂ 2 Conclusions ??
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